US6595059B2

Noninvasive detection of corrosion, MIC, and foreign objects in fluid-filled pipes using leaky guided ultrasonic waves

Summary by NHIP

Leaky Guided Wave Detection

The method generates guided waves in fluid-filled containers to measure direct and leakage fields. Correlating these fields identifies inner wall corrosion, MIC nodules, foreign objects, and fluid levels.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Ultrasonic energy in the form of guided waves is launched into the wall of a fluid-filled container. The guided wave propagates around the circumference of the container from a transmitting transducer to a receiving transducer. Part of the guide wave energy leaks into the fluid in the form of bulk waves, reflects off the inner wall on the other side and enters back to the receiving transducer trailing the direct wave. Analysis of the received waves determines the presence of corrosion pitting and MIC nodules on the container inner wall, and fluid level. In addition, it determines whether foreign objects are inside the container. The guided waves are created with wideband transducers excited at certain frequencies that depend on the material and geometry of the part being measured. The leakage energy is maximized with a shaped tone burst pulse at the specified frequency. The energy and energy ratio of both the direct and leakage fields are measured and related to the container inner wall condition and the presence of any foreign objects in the fluid.

US6595059B2, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 11 July 2020, 6.2 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

46 claims: 3 independent, 43 dependent

  1. 1
    Broadest claimClaim Score 86, broad(NHIP)A method, comprising:generating a guided wave in a fluid filled container;measuring both a direct field and a leakage field produced by the guided wave;and, correlating the measured direct and leakage fields to the existence of at least one feature, fluid or material inside of the fluid filled container.
  2. 16
    An integrated system, comprising:a transmitting transducer;and, an energy field detection module configured to measure a direct and a leakage field in a fluid filled container, which direct and leakage fields are produced in the fluid filled container by the transmitting transducer, thereby providing an indication of a container feature, a fluid composition, or a presence of a material inside of the fluid filled container.
  3. 31
    A device, comprising:a receiving transducer operably coupled to an energy field detection module, which module is configured to measure a direct and a leakage field detected by the receiving transducer when in contact with a wall of a fluid filled container, thereby providing an indication of container features, fluid composition, or the presence of materials inside of the fluid filled container.